Department of Chemistry, National University of Singapore, 3 Science Drive 3, Singapore 117543.
Org Biomol Chem. 2021 Aug 28;19(32):7051-7060. doi: 10.1039/d1ob01092a. Epub 2021 Aug 3.
Preorganization is a common strategy to align halogen bond (XB) donors to form two or more halogen bonds simultaneously. Previous approaches have utilized various non-covalent interactions such as steric interactions, ππ stacking, and hydrogen bond interactions. However, some of the introduced aligning interactions may compete with halogen bond interactions if the donors are employed in catalysis. To achieve thiourea-like properties, we have designed in silico several neutral bidentate halogen bond donors in whose structures the donor moieties are connected via covalent bonds. Compared to previous XB catalyst designs, the new design does not involve other potentially competitive non-covalent interactions such as hydrogen bonds. One of the designed XB donors can deliver strong halogen bonds, with a O-I distance as short as 2.64 Å. Density functional theory (DFT) calculations predicted that our designed catalysts may catalyze important organic reactions on their own, particularly for those reactions that involve (developing) soft anions such as thiolates.
预组织是一种将卤键(XB)供体对齐以同时形成两个或更多卤键的常用策略。以前的方法利用了各种非共价相互作用,如空间相互作用、ππ堆积和氢键相互作用。然而,如果供体用于催化,一些引入的对齐相互作用可能与卤键相互作用竞争。为了获得硫脲类似的性质,我们通过计算机设计了几种中性双齿卤键供体,在其结构中,供体部分通过共价键连接。与以前的 XB 催化剂设计相比,新设计不涉及其他潜在的竞争非共价相互作用,如氢键。设计的 XB 供体之一可以提供强的卤键,其 O-I 距离短至 2.64 Å。密度泛函理论(DFT)计算预测,我们设计的催化剂可能可以自行催化重要的有机反应,特别是对于那些涉及(开发)软阴离子(如硫醇盐)的反应。